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August 12, 20241 citationsOpen Access

Quantum information with quantum-like bits

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GAGraziano AmatiGSGregory D. Scholes

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Abstract

In previous work we have proposed a construction of quantum-like bits that could endow a large, complex classical system, for example of oscillators, with quantum-like function that is not compromised by decoherence. In the present paper we investigate further this platform of quantum-like states. Firstly, we discuss a general protocol on how to construct synchronizing networks that allow for emergent states. We then study how gates can be implemented on those states. This suggests the possibility of quantum-like computing on specially-constructed classical networks. Finally, we define a notion of measurement that allows for non-Kolmogorov interference, a feature that separates our model from a classical probabilistic system. This paper aims to explore the mathematical structure of quantum-like resources, and shows how arbitrary gates can be implemented by manipulating emergent states in those systems.

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Cite This Study

Amati et al. (2024) studied this question.

synapsesocial.com/papers/68e5ca6db6db64358756097ehttps://doi.org/10.48550/arxiv.2408.06485
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